AI Article Synopsis

  • - Trehalose is crucial for the survival of Mycobacterium tuberculosis, which can both synthesize it and absorb it from outside sources; its transport involves the ABC transporter LpqY-SugA-SugB-SugC across the cytoplasmic membrane but remains unclear through the mycomembrane.
  • - Researchers utilized the compound 6-azido trehalose to identify resistant M. tuberculosis mutants, discovering that mutations linked to resistance occurred in the PPE family protein PPE51, which is part of the mycomembrane and aids in transporting small molecules.
  • - A mutant strain lacking the ppe51 gene failed to utilize trehalose as a carbon source, confirming that PPE51 is essential for the

Article Abstract

The disaccharide trehalose is essential for viability of Mycobacterium tuberculosis, which synthesizes trehalose de novo but can also utilize exogenous trehalose. The mycobacterial cell wall encompasses two permeability barriers, the cytoplasmic membrane and the outer mycolic acid-containing mycomembrane. The ABC transporter LpqY-SugA-SugB-SugC has previously been demonstrated to mediate the specific uptake of trehalose across the cytoplasmic membrane. However, it is still unclear how the transport of trehalose molecules across the mycomembrane is mediated. In this study, we harnessed the antimycobacterial activity of the analogue 6-azido trehalose to select for spontaneous resistant M. tuberculosis mutants in a merodiploid strain harbouring two LpqY-SugA-SugB-SugC copies. Mutations mediating resistance to 6-azido trehalose mapped to the proline-proline-glutamate (PPE) family member PPE51 (Rv3136), which has recently been shown to be an integral mycomembrane protein involved in uptake of low-molecular weight compounds. A site-specific ppe51 gene deletion mutant of M. tuberculosis was unable to grow on trehalose as the sole carbon source. Furthermore, bioorthogonal labelling of the M. tuberculosis Δppe51 mutant incubated with 6-azido trehalose corroborated the impaired internalization. Taken together, the results indicate that the transport of trehalose and trehalose analogues across the mycomembrane of M. tuberculosis is exclusively mediated by PPE51.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8826857PMC
http://dx.doi.org/10.1038/s41598-022-06109-7DOI Listing

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